Bernhard Sonderegger

About Bernhard Sonderegger

Bernhard Sonderegger, With an exceptional h-index of 19 and a recent h-index of 13 (since 2020), a distinguished researcher at Johannes Kepler Universität Linz, specializes in the field of modeling, alloys, thermodynamic, microstructure, mechanical properties.

His recent articles reflect a diverse array of research interests and contributions to the field:

Recent progress in the microstructurally based creep modelling of Ni-based alloy 617

Quantitative physical modeling of the effect of precipitates in the subgrain interior on the creep curve and service life of P91

Microstructural characterization of 15Cr steel after quenching and slow cooling rates

Prediction of TTR Diagrams via Physically Based Creep Simulations of Martensitic 9-12% Cr-Steels

Gefügecharakterisierung von 15Cr-Stahl nach dem Abschrecken und langsamen Abkühlen: Microstructural characterization of 15Cr steel after quenching and slow cooling rates

Microstructural insights into creep of Ni-based alloy 617 at 700° C provided by electron microscopy and modelling

In situ laser-ultrasonic monitoring of Poisson’s ratio and bulk sound velocities of steel plates during thermal processes

Microstructurally based modeling of creep deformation and damage in martensitic steels

Bernhard Sonderegger Information

University

Position

(JKU)

Citations(all)

1206

Citations(since 2020)

502

Cited By

860

hIndex(all)

19

hIndex(since 2020)

13

i10Index(all)

26

i10Index(since 2020)

17

Email

University Profile Page

Google Scholar

Bernhard Sonderegger Skills & Research Interests

modeling

alloys

thermodynamic

microstructure

mechanical properties

Top articles of Bernhard Sonderegger

Title

Journal

Author(s)

Publication Date

Recent progress in the microstructurally based creep modelling of Ni-based alloy 617

F Riedlsperger

T Wojcik

R Buzolin

Laura Witzmann

Gerold Zuderstorfer

...

2024/1/2

Quantitative physical modeling of the effect of precipitates in the subgrain interior on the creep curve and service life of P91

Materials at High Temperatures

L Witzmann

J Mergl

F Riedlsperger

B Krenmayr

G Zuderstorfer

...

2024/2/29

Microstructural characterization of 15Cr steel after quenching and slow cooling rates

Practical Metallography

MR Ahmadi

F Meixner

M Dománková

M Raus

B Sonderegger

...

2024/1/26

Prediction of TTR Diagrams via Physically Based Creep Simulations of Martensitic 9-12% Cr-Steels

Materials Science Forum

Laura Witzmann

Florian Riedlsperger

Josef Mergl

Gerold Zuderstorfer

Bernhard Krenmayr

...

2023/12/1

Gefügecharakterisierung von 15Cr-Stahl nach dem Abschrecken und langsamen Abkühlen: Microstructural characterization of 15Cr steel after quenching and slow cooling rates

Praktische Metallographie/Practical Metallography

Mohammad Reza Ahmadi

Felix Meixner

Mária Dománková

Matthias Raus

Bernhard Sonderegger

...

2023/11/28

Microstructural insights into creep of Ni-based alloy 617 at 700° C provided by electron microscopy and modelling

Materials Characterization

Florian Riedlsperger

Tomasz Wojcik

Ricardo Buzolin

Gerold Zuderstorfer

Magdalena Speicher

...

2023/4/1

In situ laser-ultrasonic monitoring of Poisson’s ratio and bulk sound velocities of steel plates during thermal processes

Acta Materialia

Georg Watzl

Christian Kerschbaummayr

Martin Schagerl

Thomas Mitter

Bernhard Sonderegger

...

2022/8/15

Microstructurally based modeling of creep deformation and damage in martensitic steels

Christof Sommitsch

Bernhard Sonderegger

Mohammad Ahmadi

Florian Riedlsperger

Felix Meixner

...

2022/4/21

Application of a physically-based dislocation creep model to P92 for constructing TTR diagrams

Materials at High Temperatures

F Riedlsperger

Gerold Zuderstorfer

Bernhard Krenmayr

Bernhard Sonderegger

2022/3/4

Coherency strengthening of oblate precipitates extended in the {100} plane of fcc crystals: Modeling and experimental validation

Materialia

Mohammad Reza Ahmadi

Bernhard Sonderegger

Erwin Povoden-Karadeniz

Ahmad Falahati

Surya D Yadav

...

2022/3/1

CreeSo–software for creep simulation of complex alloys

Materials at High Temperatures

Gerold Zuderstorfer

Florian Riedlsperger

Bernhard Sonderegger

2022/11/2

Thermodynamic modelling and microstructural study of Z-phase formation in a Ta-alloyed martensitic steel

Materials

Florian Riedlsperger

Bernadette Gsellmann

Erwin Povoden-Karadeniz

Oriana Tassa

Susanna Matera

...

2021/3/10

Mikrostrukturbasierte Modellierung des Versetzungskriechens von martensitischen 9-12% Cr-Stählen. Anwendung, Extrapolation, Tests und Verifikation

Florian Kerem Riedlsperger

Bernhard Krenmayr

Gerold Zuderstorfer

Bernhard Sonderegger

2020/11/27

Application of an advanced mean-field dislocation creep model to P91 for calculation of creep curves and time-to-rupture diagrams

Materialia

Florian Riedlsperger

Bernhard Krenmayr

Gerold Zuderstorfer

Bernhard Fercher

Bernd Niederl

...

2020/8/1

Assessment of hydrogen-induced cracking (HIC) susceptibility of V micro-alloyed wire rod steel with different heat treatments

Hamdi Elsayed

Johann Höllwarth

Andreas Drexler

Matthew Galler

Bernhard Sonderegger

...

2020

See List of Professors in Bernhard Sonderegger University(Johannes Kepler Universität Linz)